added a butterworth biquad filter node, mostly for testing it though...
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32b2725f49
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3 changed files with 184 additions and 3 deletions
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@ -21,6 +21,9 @@ pub struct BiquadCoefs {
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pub b2: f32,
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}
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// TODO:
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// https://github.com/VCVRack/Befaco/blob/v1/src/ChowDSP.hpp#L339
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// more coeffs from there ^^^^^^^^^^^^^ ?
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impl BiquadCoefs {
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/// Returns settings for a Butterworth lowpass filter.
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/// Cutoff is the -3 dB point of the filter in Hz.
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@ -60,7 +63,7 @@ impl BiquadCoefs {
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}
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/// 2nd order IIR filter implemented in normalized Direct Form I.
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#[derive(Copy, Clone, Default)]
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#[derive(Debug, Copy, Clone, Default)]
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pub struct Biquad {
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coefs: BiquadCoefs,
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x1: f32,
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@ -84,7 +87,7 @@ impl Biquad {
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self.coefs = coefs;
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}
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fn reset(&mut self) {
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pub fn reset(&mut self) {
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self.x1 = 0.0;
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self.x2 = 0.0;
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self.y1 = 0.0;
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@ -92,7 +95,7 @@ impl Biquad {
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}
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#[inline]
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fn tick(&mut self, input: f32) -> f32 {
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pub fn tick(&mut self, input: f32) -> f32 {
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let x0 = input;
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let y0 =
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self.coefs.b0 * x0
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@ -36,6 +36,8 @@ mod node_mix3;
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mod node_bosc;
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#[allow(non_upper_case_globals)]
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mod node_vosc;
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#[allow(non_upper_case_globals)]
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mod node_biqfilt;
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pub mod biquad;
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pub mod tracker;
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@ -67,6 +69,8 @@ use crate::fa_smap_clip;
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use crate::fa_smap_mode;
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use crate::fa_sfilter_type;
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use crate::fa_bosc_wtype;
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use crate::fa_biqfilt_type;
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use crate::fa_biqfilt_ord;
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use node_amp::Amp;
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use node_sin::Sin;
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@ -86,6 +90,7 @@ use node_sfilter::SFilter;
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use node_mix3::Mix3;
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use node_bosc::BOsc;
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use node_vosc::VOsc;
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use node_biqfilt::BiqFilt;
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pub const MIDI_MAX_FREQ : f32 = 13289.75;
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@ -635,6 +640,14 @@ macro_rules! node_list {
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(2 res n_id d_id r_id f_def stp_d 0.0, 1.0, 0.5)
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{3 0 ftype setting(8) fa_sfilter_type 0 16}
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[0 sig],
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biqfilt => BiqFilt UIType::Generic UICategory::Signal
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(0 inp n_id d_id r_id f_def stp_d -1.0, 1.0, 0.0)
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(1 freq n_pit d_pit r_fq f_freq stp_d -1.0, 0.5647131, 1000.0)
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(2 q n_id d_id r_id f_def stp_d 0.0, 1.0, 0.5)
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(3 gain n_ogin d_ogin r_id f_def stp_d 0.0, 1.0, 1.0)
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{4 0 ftype setting(0) fa_biqfilt_type 0 0}
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{5 1 order setting(0) fa_biqfilt_ord 0 3}
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[0 sig],
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test => Test UIType::Generic UICategory::IOUtil
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(0 f n_id d_id r_id f_def stp_d 0.0, 1.0, 0.5)
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{1 0 p param(0.0) fa_test_s 0 10}
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165
src/dsp/node_biqfilt.rs
Normal file
165
src/dsp/node_biqfilt.rs
Normal file
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@ -0,0 +1,165 @@
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// Copyright (c) 2021 Weird Constructor <weirdconstructor@gmail.com>
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// This file is a part of HexoDSP. Released under GPL-3.0-or-later.
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// See README.md and COPYING for details.
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use crate::nodes::{NodeAudioContext, NodeExecContext};
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use crate::dsp::{NodeId, SAtom, ProcBuf, DspNode, LedPhaseVals, NodeContext};
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use crate::dsp::biquad::*;
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#[macro_export]
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macro_rules! fa_biqfilt_type { ($formatter: expr, $v: expr, $denorm_v: expr) => { {
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let s =
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match ($v.round() as usize) {
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0 => "BtW LP",
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_ => "?",
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};
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write!($formatter, "{}", s)
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} } }
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#[macro_export]
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macro_rules! fa_biqfilt_ord { ($formatter: expr, $v: expr, $denorm_v: expr) => { {
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let s =
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match ($v.round() as usize) {
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0 => "1",
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1 => "2",
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2 => "3",
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3 => "4",
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_ => "?",
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};
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write!($formatter, "{}", s)
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} } }
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/// A simple amplifier
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#[derive(Debug, Clone)]
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pub struct BiqFilt {
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cascade: Vec<Biquad>,
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srate: f32,
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ofreq: f32,
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oq: f32,
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ogain: f32,
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otype: u8,
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}
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impl BiqFilt {
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pub fn new(_nid: &NodeId) -> Self {
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Self {
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cascade: vec![Biquad::new(); 4],
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srate: 1.0 / 44100.0,
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otype: 99, // value that can't be set by the user
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ofreq: -2.0, // value that can't be set by the user
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oq: -2.0, // value that can't be set by the user
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ogain: -2.0, // value that can't be set by the user
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}
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}
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pub const inp : &'static str =
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"BiqFilt inp\nSignal input\nRange: (-1..1)\n";
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pub const freq : &'static str =
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"BiqFilt freq\nFilter cutoff frequency.\nRange: (-1..1)\n";
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pub const q : &'static str =
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"BiqFilt q\nFilter Q factor.\nRange: (0..1)\n";
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pub const gain : &'static str =
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"BiqFilt gain\nFilter gain.\nRange: (0..1)\n";
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pub const ftype : &'static str =
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"BiqFilt ftype\n";
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pub const order : &'static str =
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"BiqFilt order\n";
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pub const sig : &'static str =
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"BiqFilt sig\nFiltered signal output.\nRange: (-1..1)\n";
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pub const DESC : &'static str =
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r#"Biquad Filter
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This is the implementation of a biquad filter cascade.
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It is not meant for fast automation. Please use other nodes
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like eg. SFilter for that.
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"#;
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pub const HELP : &'static str =
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r#"BiqFilt - Biquad Filter (Cascade)
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This is the implementation of a biquad filter cascade.
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It is not meant for fast automation and might blow up if you
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treat it too rough. Please use other nodes like eg. SFilter for that.
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"#;
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}
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impl DspNode for BiqFilt {
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fn outputs() -> usize { 1 }
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fn set_sample_rate(&mut self, srate: f32) {
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self.srate = srate;
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self.otype = 99; // cause recalculation of the filter
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for b in &mut self.cascade {
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b.reset();
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}
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}
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fn reset(&mut self) {
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for b in &mut self.cascade {
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b.reset();
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}
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}
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#[inline]
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fn process<T: NodeAudioContext>(
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&mut self, ctx: &mut T, _ectx: &mut NodeExecContext,
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_nctx: &NodeContext,
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atoms: &[SAtom], inputs: &[ProcBuf],
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outputs: &mut [ProcBuf], ctx_vals: LedPhaseVals)
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{
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use crate::dsp::{out, inp, denorm, at};
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let inp = inp::BiqFilt::inp(inputs);
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let freq = inp::BiqFilt::freq(inputs);
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let q = inp::BiqFilt::q(inputs);
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let gain = inp::BiqFilt::gain(inputs);
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let ftype = at::BiqFilt::ftype(atoms);
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let order = at::BiqFilt::order(atoms);
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let out = out::BiqFilt::sig(outputs);
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let ftype = ftype.i() as u8;
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let cfreq = denorm::BiqFilt::freq(freq, 0);
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let cfreq = cfreq.clamp(0.0, 22000.0);
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let cq = denorm::BiqFilt::q(q, 0);
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let cgain = denorm::BiqFilt::gain(gain, 0);
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if ftype != self.otype
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|| (cfreq - self.ofreq).abs() > 0.0001
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|| (cq - self.oq).abs() > 0.0001
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|| (cgain - self.ogain).abs() > 0.0001
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{
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// recalculate coeffs of all in the cascade
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let coefs =
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match ftype {
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_ => BiquadCoefs::butter_lowpass(self.srate, cfreq),
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};
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for o in &mut self.cascade {
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o.set_coefs(coefs);
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o.reset();
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}
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self.otype = ftype;
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self.ofreq = cfreq;
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self.oq = cq;
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self.ogain = cgain;
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}
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let order = order.i() as u8;
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for frame in 0..ctx.nframes() {
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let freq = denorm::BiqFilt::freq(freq, frame);
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// let freq = freq.clamp($minfreq, $maxfreq);
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let q = denorm::BiqFilt::q(q, frame);
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let gain = denorm::BiqFilt::gain(gain, frame);
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let mut s = inp.read(frame);
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for i in 0..order {
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s = self.cascade[i as usize].tick(s);
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}
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out.write(frame, s);
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}
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ctx_vals[0].set(out.read(ctx.nframes() - 1));
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}
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}
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